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解决双体问题:V0V1 - ATP酶的V0区段在外泌体生物发生和多囊泡体命运中的假定作用。

Resolving the two-body problem: A postulated role for the V0 sector of the V0V1-ATPase in exosome biogenesis and multivesicular body fate.

作者信息

D'Souza-Schorey Crislyn, Stahl Philip D

机构信息

Department of Biological Sciences, University of Notre Dame, Notre Dame, IN.

Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, MO.

出版信息

Mol Biol Cell. 2025 Jan 1;36(1):pe1. doi: 10.1091/mbc.E24-09-0412.

Abstract

Because the discovery of the multivesicular body (MVB) as the origin of secreted vesicles or exosomes, the question arose and still looms-what distinguishes an MVB destined for fusion with the plasma membrane (EXO-MVB) facilitating exosome release from an MVB involved in transport of content to the lysosome (LYSO-MVB). Do they have independent origins? Hence, the two-body problem. We hypothesize that a key to this conundrum is the membrane spanning V0 sector of the proton pump, V0V1-ATPase. The V0V1-ATPase participates in the acidification of intracellular compartments, although V0 can function separately from V1 and different V0 isoforms are endowed with membrane binding capabilities that allow the V0V1-ATPase to selectively localize to different endocytic compartments including early and late endosomes and lysosomes. We propose that V0, in collaboration with cholesterol and phosphoinositides, plays a central role in the early endosome as a nucleation center to direct the de novo assembly of an EXO-MVB scaffold. The EXO-MVB scaffold may play multiple roles-operating as an assembly platform, participating in membrane fission as well as providing downstream navigational queues necessary for exosome secretion. Thus, V0 may represent an influential nexus, a starting point, in exosome biogenesis.

摘要

自从发现多泡体(MVB)是分泌性囊泡或外泌体的起源以来,一个问题出现了,并且仍然存在——是什么将注定与质膜融合的MVB(EXO-MVB,促进外泌体释放)与参与将内容物运输到溶酶体的MVB(LYSO-MVB)区分开来?它们有独立的起源吗?因此,就有了这个“双体问题”。我们假设,这个难题的关键在于质子泵V0V1-ATP酶的跨膜V0结构域。V0V1-ATP酶参与细胞内区室的酸化,尽管V0可以与V1分开发挥作用,并且不同的V0亚型具有膜结合能力,这使得V0V1-ATP酶能够选择性地定位于不同的内吞区室,包括早期和晚期内体以及溶酶体。我们提出,V0与胆固醇和磷酸肌醇协同作用,在早期内体中作为成核中心发挥核心作用,以指导EXO-MVB支架的从头组装。EXO-MVB支架可能发挥多种作用——作为组装平台、参与膜裂变以及提供外泌体分泌所需的下游导航队列。因此,V0可能代表外泌体生物发生过程中的一个有影响力的枢纽、一个起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/556c/11742106/29603fcb3e1e/mbc-36-pe1-g001.jpg

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